US2015374753A1PendingUtilityA1

Method of extracting mineral somatid and method of manufacturing advanced multifunctional material using the same

Assignee: LEE JONG DOOPriority: Jun 11, 2013Filed: Jun 2, 2014Published: Dec 31, 2015
Est. expiryJun 11, 2033(~6.9 yrs left)· nominal 20-yr term from priority
A61K 35/02C04B 33/32C04B 33/13C04B 33/04
46
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Claims

Abstract

A method of manufacturing a healing and multifunctional natural gel using mineral somatid quantum energy living bodies (QELBs). The composite material including mineral somatid is produced by separating mineral somatid from the mineral, culturing the separated mineral somatid, and combining the cultured mineral somatid with powder. The composite material is harmless, has no biological side effects, has multiple functions including cancer suppression, immune enhancement, skin reconstruction, self-heating, cold activeness, VOC deodorization and harmful electromagnetic radiation shielding and absorption, and serves to increase flavor and beneficial components by promoting fermentation and ripening.

Claims

exact text as granted — not AI-modified
1 . A method of extracting mineral somatid, comprising:
 (a) mining a natural mineral from the earth, wherein the natural mineral includes inorganic matters of SiO 2 , Al 2 O 3 , Fe 2 O 3  and MgO 3 , does not have heavy meals or a radioactive substance harmful to living bodies, and is not contaminated;   (b) crushing the mined natural mineral into powder having a particle size ranging from 320 meshes to 2 nanometers;   (c) refining the mineral powder by removing heavy metals and radioactive substances that are harmful to living bodies from the mineral powder;   (d) burning the refined mineral powder in order to change a mass, a specific gravity, a number of electrons and an ion number of the refined mineral powder;   (e) mixing the burned mineral powder with H 2 O and a natural plant extract made of agar at certain ratios and fermenting a mineral powder mixture for a predetermined period so that mineral somatid and microorganisms are activated;   (f) sterilizing and drying the fermented mineral powder mixture;   (g) putting the dried mineral powder mixture into a container, adding a solution that includes a predetermined amount of water, distilled water, magnetized water, glucose or sugar to the mineral powder mixture, adding sugar or a nutrient medium for culturing of microorganisms to the mineral powder mixture to which the solution is added, and culturing the mineral powder mixture for at least one hour; and   (h) extracting microorganisms from the mineral powder mixture cultured at the step (g) and extracting mineral somatid from the extracted microorganisms.   
     
     
         2 . The method of  claim 1 , wherein the step (d) of burning the refined mineral powder comprises:
 a first burning process of calcining the mineral powder by heating the mineral powder at a temperature ranging from 50 to 300° C. for 2 to 3 hours; and   after the first burning process is completed, a second burning process of burning the mineral powder that has been burned in the first burning process by heating the mineral powder at a temperature ranging from 300 to 850° C. for 30 minutes to 10 hours.   
     
     
         3 . The method of  claim 1 , wherein the step (e) of mixing the burned mineral powder comprises forming the mineral powder mixture by mixing, by weight, 70% the mineral powder that has been crushed at a size ranging from 320 meshes to 2 nanometers, 25% H 2 O and 5% a nontoxic plant extract of roots, stems or leaves. 
     
     
         4 . The method of  claim 1 , wherein the step (e) of fermenting the mineral powder mixture comprises putting the mineral powder mixture into a container, and ripening and fermenting the mineral powder mixture in a ripening chamber at a temperature ranging from −10 to 200° C. for 10 to 90 days so that the mineral somatid and microorganisms are activated. 
     
     
         5 . The method of  claim 1 , wherein the mineral powder of the mineral powder mixture is crushed until a size of the mineral powder ranges from 320 meshes to 2 nanometers so that only the powder from which heavy metals and harmful components are removed is extracted for use. 
     
     
         6 . The method of  claim 1 , wherein sterilizing and drying the fermented mineral powder mixture comprises rotating and sterilizing the mineral powder mixture inside a calciner at a high temperature of 180° C. or below for 30 minutes to 2 hours, and drying the sterilized mineral powder mixture at a temperature ranging from 150 to 200° C. 
     
     
         7 . The method of  claim 1 , wherein conditions for culturing the mineral powder mixture include a culture medium selected from the group consisting of yeast extraction mineral (YEM) medium, tryptic soy broth (TSB) medium, M9 medium and Luria broth (LB) medium and a culturing temperature ranges from 30 to 37° C., a composition of yeast extraction mineral (YEM) in the medium consists of Na 2 HPO 4 .12H 2 O 3.5 g, K 2 HPO 4  1.0 g, MgSO 4 1. 7H 2 O 0.03 g, NH 4 Cl 0.5 g, yeast extract 4.0 g, agar 15.0 g, and distilled water 1.0L. 
     
     
         8 . The method of  claim 1 , wherein extracting the mineral somatid comprises extracting only mineral somatid that continues life activity and radiates energy after being sterilized at a high temperature of 1,000° C. or higher for at least 10 hours in an autoclave. 
     
     
         9 . A method of manufacturing an advanced multifunctional material, comprising:
 (a) mining a natural mineral which includes inorganic matters of SiO 2 , Al 2 O 3 , Fe 2 O 3  and MgO 3 ;   (b) crushing the mined natural mineral into a shape of powder;   (c) refining and separating the mineral powder in the shape of powder;   (d) burning the refined mineral powder;   (e) mixing the burned mineral powder with H 2 O and a natural plant extract made of agar and fermenting a mineral powder mixture;   (f) sterilizing and drying the fermented mineral powder mixture;   (g) culturing the dried mineral powder mixture; and   (h) extracting microorganisms from the mineral powder mixture cultured at the step (g) and extracting mineral somatid from the extracted microorganisms; and   (i) mixing predetermined amounts of the extracted mineral somatid, ceramic powder including SiO 2 , Al 2 O 3 , Fe 2 O 3  and MgO 3 , and H 2 O, thereby manufacturing an advanced multifunctional material.

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